Muhammad Alfaridzi
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引用次数: 2

摘要

摘要:印尼境内平均风速在3米/秒到11米/秒之间,难以大规模生产电能,目前印尼风能的利用率仍然较低。然而,印度尼西亚几乎全年都有风能的潜力,这使得开发小型发电系统成为可能。改造风车的创新需要改进,以便在低风速条件下它可以产生电能。因此,采用具有高Cl / Cd值的NACA翼型进行了HAWT(水平轴风力涡轮机)叶片设计,并在风速为1 - 11米/秒的情况下产生500瓦的功率。研究分三个阶段进行。第一个计算阶段是确定叶片的半径、弦值和捻度。初始叶片设计的两个阶段是模拟使用QBlade软件,以确定NACA翼型被使用,并确定性能系数和由此产生的功率。叶片设计的三个阶段使用Solidworks软件生成三维叶片设计。设计结果产生了一个无锥度NACA 4412翼型的HAWT叶片,叶片半径为1米,弦宽0.12米,扭转角为5.08°- 12.08°。风速为10 m / s时,叶片最大Cp为52%,角速度为450 rpm时最大功率为1010 W,角速度为95 rpm时最小功率为85 W。产生的平均功率为547.5 W。NACA 4412无锥度叶片现场试验结果。现场测试结果为最大充电585.58 W,平均充电30.24 W,功率为725.55 Wh。关键词:叶片,无锥度,NACA 4412,风力机
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisis Performa Bilah Taperless Dengan Airfoil NACA 4412 pada Horizontal Axis Wind Turbine TSD 500 di PT Lentera Bumi Nusantara
Abstract: The use of wind energy in Indonesia is currently still low due to the average wind speed in the Indonesian territory ranging from 3 m / s to 11 m / s, making it difficult to produce electrical energy on a large scale. However, the potential for wind in Indonesia is available almost all year round, making it possible to develop small-scale power generation systems. Innovations in modifying windmills need to be improved so that in low wind speed conditions it can produce electrical energy. Therefore, a HAWT (Horizontal Axis Wind Turbine) blade design was made using a NACA airfoil which has a high Cl / Cd value and produces 500 W of power at wind speeds of 1 - 11 m / s. The research was conducted in 3 stages. The first calculation phase is to determine the radius, chord and twist of the blade. The two stages of the initial blade design were simulated using QBlade software to determine the NACA airfoil being used and to determine the performance coefficient and the resulting power. The three stages of blade design use Solidworks software which produces a 3D blade design. The design results produce a HAWT blade with a taperless NACA 4412 airfoil with blade radius of 1 m, chord width 0.12 m, and twist angle of 5.08 ° - 12.08 °. At a wind speed of 10 m / s, the blade has a maximum Cp of 52%, a maximum power of 1010 W at an angular speed of 450 rpm, a minimum power of 85 W at an angular speed of 95 rpm. The average power produced is 547.5 W. Field test results of Taperless NACA 4412 blades. The results of the field testing are 585.58 W of maximum charge and an average charge of 30.24 W, with the resulting power of 725.55 Wh. Keywords: Blade, Taperless, NACA 4412,Wind Turbine
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